EP1007282B1 - Element de fixation et son utilisation pour fixer un element d'abrasion ou de polissage sous forme de feuille sur un support magnetise - Google Patents

Element de fixation et son utilisation pour fixer un element d'abrasion ou de polissage sous forme de feuille sur un support magnetise Download PDF

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Publication number
EP1007282B1
EP1007282B1 EP98900275A EP98900275A EP1007282B1 EP 1007282 B1 EP1007282 B1 EP 1007282B1 EP 98900275 A EP98900275 A EP 98900275A EP 98900275 A EP98900275 A EP 98900275A EP 1007282 B1 EP1007282 B1 EP 1007282B1
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EP
European Patent Office
Prior art keywords
attachment means
adhesive
abrasive
polishing
layer
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP98900275A
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German (de)
English (en)
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EP1007282A1 (fr
Inventor
Morten J. Damgaard
Leila Bjerregaard
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Struers ApS
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Struers ApS
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Publication date
Application filed by Struers ApS filed Critical Struers ApS
Publication of EP1007282A1 publication Critical patent/EP1007282A1/fr
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Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24DTOOLS FOR GRINDING, BUFFING OR SHARPENING
    • B24D11/00Constructional features of flexible abrasive materials; Special features in the manufacture of such materials
    • B24D11/02Backings, e.g. foils, webs, mesh fabrics
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24DTOOLS FOR GRINDING, BUFFING OR SHARPENING
    • B24D9/00Wheels or drums supporting in exchangeable arrangement a layer of flexible abrasive material, e.g. sandpaper
    • B24D9/08Circular back-plates for carrying flexible material
    • B24D9/085Devices for mounting sheets on a backing plate

Definitions

  • the present invention relates to an attachment means for facilitating the attachment of a sheet-formed abrasive or polishing means, such as abrasive paper, to a magnetized support, such as a magnetized rotatable supporting plate in an apparatus for performing abrasion and/or polishing.
  • abrasive and polishing means e.g. in terms of abrasive sheets having various grinding grain sizes are used.
  • the treatment cf a materiallographic sample normally starts with an abrasive sheet having a relatively large grain size and eventually ends up with an abrasive sheet having a very small grain size and/or a polishing cloth, the process comprising a number of treatment steps using means each having different and gradually reduced grain sizes. It is therefore crucial that the changing of the abrasive means is as simple and easy as possible. Furthermore it is desirable that the reuse of not completely worn out abrasive means is facilitated.
  • an abrasive disc comprising a plastic basis layer being coated on one side with a layer of abrasive grains and in which ferromagnetic particles are embedded in an amount sufficient for retaining the abrasive disc to a rotatable magnetic supporting plate with sufficient force for the abrasive disc in use hereof whereby the supporting plate is rotated not to be turned in relation to the latter.
  • EP-B1-0 005 161 Another way of temporarily attaching an abrasive sheet to a rotatable support is disclosed in EP-B1-0 005 161.
  • This document discloses an abrasive sheet having a backside comprising a release layer of polyamide or polyvinyl acetate copolymer material in order to enable an easy removal of the sheet from a support comprising an adhesive.
  • Another disadvantage of having an adhesive layer on the support is that the applied abrasive sheets might not all have exactly the same size. Accordingly if the entire support is coated with an adhesive, and an abrasive sheet smaller than the support is used, some of the adhesive will be exposed to the dust, dirt and optional liquid from the grinding process and thus be adversely effected. On the other hand, if too small a part of the support is covered with adhesive, the adhesive effect might be too small and the abrasive sheet will be displaced or even detached during grinding having potentially even worse consequences.
  • the attachment means according to the invention accordingly makes it possible that a sheet-formed abrasive or polishing means, such as abrasive paper, after use, e.g. after wearing-down of the layer of abrasive particles, easily can be removed and replaced by a new piece of abrasive paper without any other costs than the costs for the abrasive paper itself.
  • a sheet-formed abrasive or polishing means such as abrasive paper
  • Such an easy and economic replacement of abrasive paper is not only desirable after wearing-down of the abrasive paper but also in such cases where an abrasion or polishing is to be performed in several steps with abrasive or polishing means where the abrasive grains have different grain sizes.
  • the external adhesive layer of the attachment means following repeated replacements of the sheet-formed abrasive or polishing means also needs replacement, it is an easy task to replace the attachment means by grasping an edge of the attachment means and pulling this edge away from the magnetic support and thus replacing the attachment means with a new one.
  • the attachment means is under the influence of strong magnetic forces in the horizontal direction when it is in a plane position on the surface of the magnetic support and thereby ensures that the abrasive or polishing means does not slip in relation to the support during abrasion or polishing.
  • a contributory factor is that the items to be abraded or polished will normally be urged against the abrasive or polishing means during the abrasion or polishing.
  • a foil of a ferromagnetic substance such as an iron foil, has smaller resilience and a better heat conductivity, so that the frictional heat which is generated during the abrasion or polishing can be discharged via the supporting plate.
  • a ferromagnetic foil having a thickness of 0.05-1 mm it is preferred to use a ferromagnetic foil having a thickness of 0.05-1 mm, as thinner foils do not have a desired strength, and foils having a larger thickness than 1 mm are so rigid that they impede removal from and mounting on the supporting plate.
  • the thickness of the foil is preferably around 0.1 to 0.7 mm and more preferably around 0.25 to 0.35 mm, and it has turned out to be particularly expedient to use iron foils having a thickness of around 0.3 mm.
  • a polymer liner as carrier means for the adhesive.
  • a liner can be primed or corona treated as known in the art of production of adhesive tapes in order to make the adhesive material stick to the liner rather than the backside of the abrasive or polishing means when detaching said means from the attachment means.
  • the typical and/or preferred abrasive or polishing means for use with the attachment means according to the invention has a siliconized backside composed of cloth or cardboard.
  • the liner comprises two different types of adhesive compositions, one disposed on each side.
  • the internal adhesive layer facing the ferromagnetic foil constitutes the largest adhesive force of the two compositions.
  • attachment means comprises a polymer liner having the same adhesive composition disposed on both sides.
  • This embodiment has the further advantage that it is particularly easy to produce, because only one type of adhesive composition is used, and furthermore no control has to be made in regard to which side of the liner is applied on the ferromagnetic foil and which side is eventually facing the abrasive or polishing means.
  • Another advantage of using a liner having an adhesive layer disposed on both sides is that it is virtually impossible to apply an adhesive layer directly on the sheet metal in a technical suitable and efficient manner.
  • the polymer liner is flexible and easy to handle when e.g. priming the liner and applying adhesive to the liner surfaces, it is rather complicated and/or costly to handle a sheet metal foil in a similar manner.
  • the sheet metal is not in practice sufficiently bendable and consequently machinery for processing such sheet metal has to work in a more or less linear manner taking up more space than needed and being more complicated than machinery for producing the attachment mean according to the invention.
  • the adhesive coated liner sheet should generally and preferably evoke the greatest possible adhesive capacity towards base layer comprising the foil of ferromagnetic substance, and in relation thereto the adhesive coated liner should preferably exhibit such an internal adhesive strength of at least 10 N/25 mm, preferably at least 13 N/25 mm and more preferably at least 15 N/25 mm.
  • the external adhesive layer In relation to the sheet-formed abrasive or polishing means the external adhesive layer must ensure that the sheet-formed means is not released under the influence of the forces parallel to the surface of the sheet-formed material which arise during the abrasion or polishing process, and at the same time that the sheet-formed material without breaking can be removed after use. Consequently, it is desirable that the external adhesive in relation to the sheet-formed abrasive or polishing means exhibits an adhesive strength of 3-15 N/25 mm, preferably 5-12 N/25 mm. However, generally the external adhesive strength towards the abrasive or polishing means should be less than the internal adhesive strength towards the ferromagnetic foil.
  • the adhesive strength of an adhesive composition is specific in relation to a certain material, e.g. most adhesives would have a higher adhesive strength sticking to a sheet of iron foil compared to a foil of Teflon®.
  • the adhesive capacity of an adhesive can be measured by means of as tape test, which defines the force in Newton necessary to remove a 25 mm long piece of tape coated with the adhesive from a standardized surface, e.g. steel.
  • the sheet-formed abrasive or polishing means When mounting the sheet-formed abrasive or polishing means on the adhesive layer of the attachment means it is important that the sheet-formed abrasive or polishing means is made to lie completely plane. As a consequence hereof it is important to prevent air bobbles from forming between the sheet-formed abrasive or polishing means and the attachment means. According to the invention this is obtainable by using a structured external adhesive layer, i.e. an adhesive layer the top side of which is provided with protrusions and recesses, and where the recesses during and after mounting the sheet-formed abrasive or polishing means form ducts through which any air build-up can be discharged.
  • a structured external adhesive layer i.e. an adhesive layer the top side of which is provided with protrusions and recesses
  • the adhesive strength can be adjusted by the type or amount of optional structuring of the surfaces of the adhesive layers.
  • the adhesive strength can be controlled by the amount of adhesive material disposed on each side of the liner.
  • Examples of useful adhesives for forming the adhesive layers include rubber or acryl-based adhesives.
  • the liner sheet can be of any material capable of being coated with an adhesive layer on each side.
  • the liner is capable of being primed and/or corona treated in order to fixate the adhesive material on the liner.
  • a suitable and preferable liner comprises PVC, PET, PP or another similar polymer.
  • the magnetic force holding a sheet iron plate suitable for the production of an attachment means according to the invention fixed on the magnetic support is in the horizontal direction typically in the order of magnitude of about 0.10 to 0.20 N/cm 2 , preferably around 0.13 to 0.17 N/cm 2 .
  • a magnetic force in this order of magnitude makes it easy to detach the attachment means from the magnetic support. Furthermore it is a suitable force for fixating the attachment means to the support during polishing and lighter grinding.
  • this is obtainable by providing the side of the foil facing the supporting plate with a thin, friction-increasing coating, such as a coating of a plastics, in terms of a synthetic resin, in which fine, hard particles are embedded, such as particles of Al 2 O 3 , diamond or SiC.
  • a thin, friction-increasing coating such as a coating of a plastics, in terms of a synthetic resin, in which fine, hard particles are embedded, such as particles of Al 2 O 3 , diamond or SiC.
  • the plastics coating is preferably so thin that the hard grains which preferably have a grain size from F220 to F320, prcject above the top side of the plastics coating and hereby can be brought into direct contact with the magnetic support.
  • the thin plastics layer can e.g. consist of or comprise epoxy, polyester, polyurethane or acrylic plastics.
  • the invention also relates to the use of the attachment means according to the invention for attaching an abrasive or polishing means to a magnetized support in an apparatus for grinding or polishing.
  • the attachment means according to the invention is particularly suitable for use in a grinding and/or polishing apparatus comprising a planar rotatable magnetized support plate having a diameter of around 20-25 cm, e.g. of the type Struers® Rotopol-21.
  • Such a plate is typically rotated by a speed of approximately 150/300 rpm.
  • a fluid as coolant and/or lubricant, e.g. in terms of water and/or alcohol. It is a particularly great advantage of using the attachment means according to the invention that such use of the commonly known grinding and/or polishing fluids does substantially not impair the short and/or long term efficiency of the attachment means.
  • attachment means according to the invention for temporarily fixating a abrasive and/or polishing means according to the invention that the attachment means can be reused a large number of times, thus reducing costs significantly.
  • the typical attachment means according to the invention can be used about 100 times before it must be discarded. This is a great improvement over the prior art, where the known attachment means is for one-time use only.
  • the invention furthermore relates to a method of producing an attachment means according to the invention comprising the steps of applying a double sided adhesive tape on a first side of a ferromagnetic base layer and cutting said base layer and double sided adhesive tape in the desired shape.
  • the base layer and double sided adhesive tape can be cut in any order suitable.
  • the method furthermore comprises the steps of applying a mixture of an epoxy resin and hard particles on the second side of the base layer and curing said epoxy resin.
  • ferromagnetic material designates all types of metals and metal alloys which can be magnetized and/or attracted by a magnet, e.g. iron.
  • magnetized support designates any support being capable of fixating a ferromagnetic metal, i.e. a support comprising one or more magnets.
  • the magnetic force of the magnetized support can be provided by any means such as any number of static- and/or electromagnets.
  • Fig 1 schematically illustrates a magnetic support to which a piece of abrasive paper has been attached in a preferred embodiment of the method according to the invention.
  • Fig 2 schematically illustrates a liner sheet comprising 2 adhesive layers.
  • FIG. 3 schematically illustrates a preferred embodiment of an attachment means according to the invention.
  • 1 is a magnetic rotatable supporting plate to which a piece of abrasive paper 2 is attached.
  • the attachment has been provided by means of an attachment means in terms of an inter-mediate layer, generally designated 3, and which comprises a ferromagnetic foil 4 which on the side facing the abrasive paper 2 is coated with a layer 5 of an adhesive, and on the opposite side with a friction-increasing layer 6 of an synthetic epoxy resin in which fine SiC-particles are embedded.
  • the abrasive paper 2 can be removed from the adhesive layer 5 without removing this from the ferromagnetic foil 4.
  • 5a designates a polymer liner sheet comprising a first adhesive layer 5b at one side and a second adhesive layer 5c at the second side.
  • Fig 3 illustrates a preferred embodiment of the attachment means according to the invention 3, in terms of an intermediate layer comprising a ferromagnetic foil 4, an adhesive sandwich comprising a liner sheet 5a, a first internal adhesive layer 5b between the liner and the ferromagnetic foil mutually fixating said liner and said foil, and a second external adhesive layer 5c for releasably fixating an abrasion and/or polishing means, and a friction increasing layer 6 comprising a synthetic epoxy resin comprising a number of fine SiC-particles.
  • a commercially available double-adhesive tape of the type TESA® 52320, i.a. used for cliché mounting was rolled out.
  • the adhesive tape consisted of a thin PVC foil being coated on its top side with a structured rubber-based adhesive, and on its bottom side with an acryl-based adhesive, and its top side being covered by a thin protective foil of polypropylene.
  • a mixture of epoxy resin and SiC-grains having a particle size of F220 and in a weight ratio of 1:1 was applied to the back of the circular tinplate on which the epoxy resin was made to cure.
  • the adhesive tape is composed by a thin polymer liner which has been treated with a primer or by corona treatment to facilitate fixation of the adhesive to said polymer material and then coated on both sides with a layer of a rubber based adhesive.
  • the one side of the tape is covered with a thin protective foil of polypropylene and the adhesive layer on the opposite side is exposed thus used directly for fixating the tape on the sheet iron.
  • the protective foil is kept on external adhesive layer of the attachment means until the initial use thereof.
  • a mixture of an epoxy resin and SiC grains having the particle size F220 is mixed in a density ratio of 1:1 and is then applied to the backside of the above mentioned circular sheet iron foil and cured.
  • the typical horizontal displacement force between the magnetic support and the attachment means provided in the present example is around 30 N/cm 2 .

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Polishing Bodies And Polishing Tools (AREA)

Claims (15)

  1. Moyen de fixation pour fixer un moyen abrasif et/ou de polissage en forme de feuille à un support magnétisé, ledit moyen de fixation comprenant une couche de base ferromagnétique et une couche adhésive externe à laquelle le moyen abrasif et/ou de polissage doit être fixé, selon lequel ladite couche de base ferromagnétique comprend une feuille métallique ferromagnétique (4) et ledit moyen de fixation comprend une feuille de revêtement (5a) dont un premier côté adhère à un premier côté de la couche de base au moyen d'une couche adhésive interne (5b), le deuxième côté de la feuille de revêtement étant recouvert d'une couche adhésive externe (5c), la couche adhésive externe permettant de fixer de manière amovible le moyen abrasif et/ou de polissage et ladite couche adhésive externe pouvant également sensiblement conserver son pouvoir adhésif après le retrait du moyen abrasif et/ou de polissage, et selon lequel le deuxième côté de la couche de base comprend une couche augmentant la friction (6).
  2. Moyen de fixation selon la revendication 1, caractérisé en ce que la feuille ferromagnétique (4) se compose sensiblement de fer.
  3. Moyen de fixation selon l'une quelconque des revendications précédentes, caractérisé en ce que la feuille ferromagnétique (4) présente une épaisseur de 0,05 à 1 mm.
  4. Moyen de fixation selon l'une quelconque des revendications précédentes, caractérisé en ce que la feuille ferromagnétique (4) présente une épaisseur de 0,25 à 0,35 mm.
  5. Moyen de fixation selon l'une quelconque des revendications précédentes caractérisé en ce que les couches adhésives interne et externe (5b,5c) comprennent des compositions adhésives identiques.
  6. Moyen de fixation selon l'une quelconque des revendications précédentes caractérisé en ce que les couches adhésives interne et externe (5b,5c) comprennent des compositions adhésives différentes.
  7. Moyen de fixation selon l'une quelconque des revendications précédentes caractérisé en ce que la couche adhésive interne (5b) présente un pouvoir adhésif d'au moins 15N/25 mm contre la couche de base.
  8. Moyen de fixation selon l'une quelconque des revendications précédentes caractérisé en ce que la couche adhésive externe (5c) présente un pouvoir adhésif par rapport au moyen abrasif et/ou de polissage compris entre 5 et 12N/25 mm.
  9. Moyen de fixation selon l'une quelconque des revendications précédentes caractérisé en ce que la couche adhésive externe (5c) présente une surface structurée.
  10. Moyen de fixation selon l'une quelconque des revendications précédentes caractérisé en ce que la couche adhésive externe (5c) se compose d'un adhésif à base de caoutchouc ou d'acryle.
  11. Moyen de fixation selon l'une quelconque des revendications précédentes, caractérisé en ce que la couche augmentant la friction (6) comprend un certain nombre de particules dures et fines intégrées dans une résine synthétique.
  12. Moyen de fixation selon la revendication 11, caractérisé en ce que les particules dures et fines présentent une granulométrie comprise entre F220 et F320.
  13. Utilisation d'un moyen de fixation selon l'une quelconque des revendications 1 à 12, pour fixer, de manière amovible, un moyen abrasif et/ou de polissage en forme de feuille à un support magnétisé dans un appareil pour effectuer un meulage et/ou un polissage.
  14. Utilisation d'un moyen de fixation comprenant une couche de base ferromagnétique et une couche adhésive externe à laquelle le moyen abrasif et/ou de polissage est fixé, selon lequel ladite couche de base ferromagnétique comprend une feuille métallique ferromagnétique (4) et ledit moyen de fixation comprend une feuille de revêtement (5a) dont un premier côté adhère à un premier côté de la couche de base au moyen d'une couche adhésive interne (5b), le deuxième côté de la feuille de revêtement étant recouvert d'une couche adhésive externe (5c), la couche adhésive externe permettant de fixer de manière amovible le moyen abrasif et/ou de polissage et ladite couche adhésive externe pouvant également sensiblement conserver son pouvoir adhésif après le retrait du moyen abrasif et/ou de polissage; pour fixer de manière amovible un moyen abrasif et/ou de polissage en forme de feuille à un support magnétisé dans un appareil de meulage et/ou polissage.
  15. Procédé de production d'un moyen de fixation selon l'une quelconque des revendications 1 à 12, caractérisé en ce qu'il comprend les étapes consistant à coller une bande adhésive double face à un premier côté d'une couche de base ferromagnétique au moyen d'une couche adhésive interne (5b) placée sur un côté de ladite bande adhésive double face, appliquer un mélange d'une résine époxy et de particules dures sur le deuxième côté de la couche de base et faire durcir ladite résine époxy et couper ladite couche de base et la bande adhésive pour leur donner une forme requise.
EP98900275A 1997-01-13 1998-01-13 Element de fixation et son utilisation pour fixer un element d'abrasion ou de polissage sous forme de feuille sur un support magnetise Expired - Lifetime EP1007282B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DK4197 1997-01-13
DK4197 1997-01-13
PCT/DK1998/000016 WO1998030359A1 (fr) 1997-01-13 1998-01-13 Element de fixation et son utilisation pour fixer un element d'abrasion ou de polissage sous forme de feuille sur un support magnetise

Publications (2)

Publication Number Publication Date
EP1007282A1 EP1007282A1 (fr) 2000-06-14
EP1007282B1 true EP1007282B1 (fr) 2002-04-03

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Country Status (6)

Country Link
US (1) US6116998A (fr)
EP (1) EP1007282B1 (fr)
JP (1) JP2001508365A (fr)
DE (1) DE69804632T2 (fr)
FR (1) FR2758285B3 (fr)
WO (1) WO1998030359A1 (fr)

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FR2302461A1 (fr) * 1975-02-27 1976-09-24 Semt Dispositif de lubrification d'un systeme de guidage de soupape pour un moteur a combustion intern
CA1078620A (fr) * 1978-05-05 1980-06-03 Miksa Marton Disque auto-collant pour poncage
AT359387B (de) * 1978-05-05 1980-11-10 Marton Miksa Mit einem schleifblatt belegter, rotierend angetriebener schleifteller
US4222204A (en) * 1979-06-18 1980-09-16 Benner Robert L Holder for an abrasive plate
US4667447A (en) * 1983-08-31 1987-05-26 Minnesota Mining And Manufacturing Company Coated abrasive sheet material magnetically attached to a support surface on an abrading tool
US4607464A (en) * 1984-11-13 1986-08-26 Minnesota Mining And Manufacturing Company Coated abrasive back up pad
EP0728055A1 (fr) * 1994-09-08 1996-08-28 Struers A/S Feuille de couverture de meulage/polissage se pla ant sur un disque tournant de meulage/polissage
US5573816A (en) * 1995-06-06 1996-11-12 Norton Company Friction coating for film backings

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1741515A1 (fr) 2005-07-05 2007-01-10 August Rüggeberg GmbH & Co. KG Outil
EP3736084A1 (fr) 2019-05-07 2020-11-11 Guido Valentini Outil électroportatif pour le ponçage ou le polissage d'une pièce à usiner

Also Published As

Publication number Publication date
JP2001508365A (ja) 2001-06-26
US6116998A (en) 2000-09-12
FR2758285A3 (fr) 1998-07-17
EP1007282A1 (fr) 2000-06-14
DE69804632D1 (de) 2002-05-08
DE69804632T2 (de) 2002-11-28
WO1998030359A1 (fr) 1998-07-16
FR2758285B3 (fr) 1998-12-04

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